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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >High-sensitivity tracing of stable isotope labeled Ag nanoparticles in environmental samples using MC-ICP-MS
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High-sensitivity tracing of stable isotope labeled Ag nanoparticles in environmental samples using MC-ICP-MS

机译:使用MC-ICP-MS在环境样品中标记Ag纳米粒子的高敏感性追踪

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摘要

Silver nanoparticles (Ag NPs) are among the most widely used engineered nanomaterials and this warrants further investigation of their behaviour and fate in the environment. To support such work, we developed new techniques for efficient tracing of Ag NPs that are produced from, and hence labelled with, enriched Ag-109 (Ag-En). The methods encompass a one-step anion exchange separation of Ag from the sample matrix and precise determination of Ag-109/Ag-107 ratios and Ag-109 abundances by multiple-collector ICP-MS. The sample preparation procedure has an Ag yield of 104 +/- 13% (1 SD) and a procedural Ag blank of less than 7 pg, enabling analysis of samples with only trace Ag contents. Analyses of Ag solutions and realistic samples show that careful correction of memory effects is paramount for ensuring data quality. Using appropriate procedures, the Ag-109/Ag-107 ratios of samples containing Ag-En can be determined to a precision and trueness of better than about 0.5%, when more than 0.5 ng Ag are available for analysis. Even if Ag is only present at 50 pg or less, the Ag isotope ratios and Ag-En concentrations of samples can be measured to better than 5 to 10%. The methods are therefore able to resolve the presence of 1 pg of Ag-En in samples that contain as little as 10 pg and to up to 1 ng of natural Ag. As such, the techniques allow robust detection and quantification of Ag-En in environmental samples even when highly variable quantities of Ag-En and natural Ag are present. The new methodology thus enables the use of stable isotope tracing to investigate the fate of Ag NPs in complex environmental systems at dosing concentrations similar to the predicted environmental concentrations and for very small samples, whilst also providing high sample throughput.
机译:银纳米颗粒(AG NPS)是最广泛使用的工程化的纳米材料之一,这是在环境中进一步调查其行为和命运。为了支持这些工作,我们开发了用于高效追踪的新技术,用于富集的AG NPS,并因此标记为富含AG-109(AG-ZH)。该方法包括来自样品基质的一步阴离子交换分离,并精确测定多集聚器ICP-MS的Ag-109 / Ag-107比率和Ag-109丰度。样品制备程序具有104 +/- 13%(1SD)的Ag产率和少于7pg的程序AG空白,从而能够分析除痕量Ag含量的样品。 AG解决方案和现实样本的分析表明,对确保数据质量的仔细校正是至关重要的。使用适当的程序,当可以确定0.5 ng AG可用于分析时,可以确定含有Ag-Zh的样品的AG-109 / Ag-107比含有Ag-Zh的样品比率优于约0.5%。即使Ag仅存在于50 pg或更小,也可以测量Ag同位素比和Ag-en浓度的样品浓度优于5至10%。因此,该方法能够在含有多达10pg和高达1ng天然Ag的样品中的样品中解决1pg Ag-Zh的存在。因此,即使当存在高度可变量和天然Ag时,该技术允许在环境样品中稳健检测和定量Ag-Zh。因此,新方法使得能够使用稳定的同位素跟踪来研究与预测的环境浓度类似的剂量浓度和非常小的样品的复合环境系统中Ag NPS的命运,同时提供高样品产量。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2019年第6期|1173-1183|共11页
  • 作者单位

    Imperial Coll London Dept Earth Sci & Engn London SW7 2AZ England;

    Imperial Coll London Dept Earth Sci & Engn London SW7 2AZ England;

    Imperial Coll London Dept Earth Sci & Engn London SW7 2AZ England;

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